Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant Cavity

【Objective】In order to achieve a highly sensitive refractive index sensor in a nanoscale spatial dimension, a square composite resonant cavity containing a stub resonator has been proposed as a resonant element adjacent to Metal-Dielectric-Metal (MDM) Surface Plasmon Polaritons (SPPs) waveguide in t...

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Main Authors: XU Pucheng, GUAN Jianfei
Format: Article
Language:zho
Published: 《光通信研究》编辑部 2024-12-01
Series:Guangtongxin yanjiu
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Online Access:http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2024.230071
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author XU Pucheng
GUAN Jianfei
author_facet XU Pucheng
GUAN Jianfei
author_sort XU Pucheng
collection DOAJ
description 【Objective】In order to achieve a highly sensitive refractive index sensor in a nanoscale spatial dimension, a square composite resonant cavity containing a stub resonator has been proposed as a resonant element adjacent to Metal-Dielectric-Metal (MDM) Surface Plasmon Polaritons (SPPs) waveguide in this paper.【Methods】The paper employs the finite element method to comparatively analyze the characteristics of the transmission peak spectrum and the mode field distribution at the peak position of the square resonant cavity coupled MDM waveguide structure before and after the introduction of the stub cavity. The analysis results reveal that the degeneracy separation phenomenon of the first and second order quasi resonant modes in the composite cavity can be observed clearly when the stub resonator is added in the square-shaped cavity. Consequently, four transmission peaks with sharp edges have emerged in the transmission spectra, which are generated by the quadruple Fano resonance. By changing the structural parameters such as the side length of the square cavity and stub length, as well as the refractive index of the medium filled in the cavity, the dependence of the transmission spectra on the structural and material parameters of the resonant cavity was calculated in detail.【Results】By analyzing the quantitative impact of structural parameters on the peak wavelength, the resonance conditions responsible for the transmission peaks have been derived and the increments of the effective cavity length contributed by the stub resonator have been analyzed in turn for the four resonant modes. By calculating the transmission spectra associated with the varied medium filled in the composite cavity, the peak wavelength shows an approximate linear relationship with the refractive indexes of the filled medium. The sensing sensitivity of the quadruple transmission peaks has been obtained based on the linear fitting results.【Conclusion】The calculation results in the article indicate that the sensitivity of refractive index sensing is directly proportional to the effective cavity length of the composite cavity, and inversely proportional to the resonance order. When selecting a square composite cavity structure with a side length of 360 nm and a stub length of 210 nm, the sensing sensitivity of the transmission peak produced by the first-order Fano resonance can reach 2 000 nm/RIU. The research conclusion of this paper can provide a valuable reference for the design of nanoscale high sensitivity refractive index sensors.
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publishDate 2024-12-01
publisher 《光通信研究》编辑部
record_format Article
series Guangtongxin yanjiu
spelling doaj-art-dfa6b390e2654e5991f145d8aec3d9ba2025-08-20T02:46:57Zzho《光通信研究》编辑部Guangtongxin yanjiu1005-87882024-12-01230071012300710778025393Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant CavityXU PuchengGUAN Jianfei【Objective】In order to achieve a highly sensitive refractive index sensor in a nanoscale spatial dimension, a square composite resonant cavity containing a stub resonator has been proposed as a resonant element adjacent to Metal-Dielectric-Metal (MDM) Surface Plasmon Polaritons (SPPs) waveguide in this paper.【Methods】The paper employs the finite element method to comparatively analyze the characteristics of the transmission peak spectrum and the mode field distribution at the peak position of the square resonant cavity coupled MDM waveguide structure before and after the introduction of the stub cavity. The analysis results reveal that the degeneracy separation phenomenon of the first and second order quasi resonant modes in the composite cavity can be observed clearly when the stub resonator is added in the square-shaped cavity. Consequently, four transmission peaks with sharp edges have emerged in the transmission spectra, which are generated by the quadruple Fano resonance. By changing the structural parameters such as the side length of the square cavity and stub length, as well as the refractive index of the medium filled in the cavity, the dependence of the transmission spectra on the structural and material parameters of the resonant cavity was calculated in detail.【Results】By analyzing the quantitative impact of structural parameters on the peak wavelength, the resonance conditions responsible for the transmission peaks have been derived and the increments of the effective cavity length contributed by the stub resonator have been analyzed in turn for the four resonant modes. By calculating the transmission spectra associated with the varied medium filled in the composite cavity, the peak wavelength shows an approximate linear relationship with the refractive indexes of the filled medium. The sensing sensitivity of the quadruple transmission peaks has been obtained based on the linear fitting results.【Conclusion】The calculation results in the article indicate that the sensitivity of refractive index sensing is directly proportional to the effective cavity length of the composite cavity, and inversely proportional to the resonance order. When selecting a square composite cavity structure with a side length of 360 nm and a stub length of 210 nm, the sensing sensitivity of the transmission peak produced by the first-order Fano resonance can reach 2 000 nm/RIU. The research conclusion of this paper can provide a valuable reference for the design of nanoscale high sensitivity refractive index sensors.http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2024.230071SPPsMDM waveguidesquare-shaped composite cavityFano resonancerefractive index sensor
spellingShingle XU Pucheng
GUAN Jianfei
Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant Cavity
Guangtongxin yanjiu
SPPs
MDM waveguide
square-shaped composite cavity
Fano resonance
refractive index sensor
title Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant Cavity
title_full Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant Cavity
title_fullStr Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant Cavity
title_full_unstemmed Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant Cavity
title_short Study of the Refractive Index Sensing based on MDM Waveguide Coupled with a Square-shaped Composite Resonant Cavity
title_sort study of the refractive index sensing based on mdm waveguide coupled with a square shaped composite resonant cavity
topic SPPs
MDM waveguide
square-shaped composite cavity
Fano resonance
refractive index sensor
url http://www.gtxyj.com.cn/thesisDetails#10.13756/j.gtxyj.2024.230071
work_keys_str_mv AT xupucheng studyoftherefractiveindexsensingbasedonmdmwaveguidecoupledwithasquareshapedcompositeresonantcavity
AT guanjianfei studyoftherefractiveindexsensingbasedonmdmwaveguidecoupledwithasquareshapedcompositeresonantcavity